参数资料
型号: ADUC816BCP
厂商: Analog Devices Inc
文件页数: 27/68页
文件大小: 0K
描述: IC MCU 8K FLASH ADC/DAC 56LFCSP
标准包装: 1
系列: MicroConverter® ADuC8xx
核心处理器: 8052
芯体尺寸: 8-位
速度: 12.58MHz
连通性: I²C,SPI,UART/USART
外围设备: PSM,温度传感器,WDT
输入/输出数: 34
程序存储器容量: 8KB(8K x 8)
程序存储器类型: 闪存
EEPROM 大小: 640 x 8
RAM 容量: 256 x 8
电压 - 电源 (Vcc/Vdd): 2.7 V ~ 5.5 V
数据转换器: A/D 7x16b; D/A 1x12b
振荡器型: 内部
工作温度: -40°C ~ 85°C
封装/外壳: 56-VFQFN 裸露焊盘,CSP
包装: 托盘
产品目录页面: 738 (CN2011-ZH PDF)
REV. 0
ADuC816
–33–
Table IX. Primary ADC, Typical Output RMS Noise ( V)
Typical Output RMS Noise vs. Input Range and Update Rate; Output RMS Noise in
V
SF
Data Update
Input Range
Word
Rate (Hz)
20 mV
40 mV
80 mV
160 mV
320 mV
640 mV
1.28 V
2.56 V
13
105.3
1.50
1.60
1.75
3.50
4.50
6.70
11.75
69
19.79
0.60
0.65
0.95
1.40
2.30
255
5.35
0.35
0.37
0.51
0.82
1.25
Table X. Primary ADC, Peak-to-Peak Resolution (Bits)
Peak-to-Peak Resolution vs. Input Range and Update Rate; Peak-to-Peak Resolution in Bits
SF
Data Update
Input Range
Word
Rate (Hz)
20 mV
40 mV
80 mV
160 mV
320 mV
640 mV
1.28 V
2.56 V
13
105.3
12
13
14
15
15.5
16
69
19.79
13
14
15
16
1
16
1
16
1
16
1
255
5.35
14
15
16
1
16
1
16
1
16
1
16
1
NOTE
1Peak-to-peak resolution at these range/update rate settings is limited only by the number of bits available from the ADC. Effective resolution at these range/update
rate settings is greater than 16 bits as indicated by the rms noise table shown in Table IX.
Table XI. Auxiliary ADC
Typical Output RMS Noise vs. Update Rate
1
Output RMS Noise in
V
SF
Data Update
Input Range
Word
Rate (Hz)
2.5 V
13
105.3
10.75
69
19.79
2.00
255
5.35
1.15
NOTE
1ADC converting in bipolar mode.
Peak-to-Peak Resolution vs. Update Rate
1
Peak-to-Peak Resolution in Bits
SF
Data Update
Input Range
Word
Rate (Hz)
2.5 V
13
105.3
16
2
69
19.79
16
255
5.35
16
NOTES
1ADC converting in bipolar mode.
2In unipolar mode peak-to-peak resolution at 105 Hz is 15 bits.
Analog Input Channels
The primary ADC has four associated analog input pins (labelled
AIN1 to AIN4) which can be configured as two fully differential
input channels. Channel selection bits in the ADC0CON SFR
detailed in Table V allow three combinations of differential pair
selection as well as an additional shorted input option (AIN2–AIN2).
The auxiliary ADC has three external input pins (labelled AIN3
to AIN5) as well as an internal connection to the internal on-chip
temperature sensor. All inputs to the auxiliary ADC are single-
ended inputs referenced to the AGND on the part. Channel
selection bits in the ADC1CON SFR detailed previously in
Table VI allow selection of one of four inputs.
Two input multiplexers switch the selected input channel to the
on-chip buffer amplifier in the case of the primary ADC and
directly to the sigma-delta modulator input in the case of the
auxiliary ADC. When the analog input channel is switched, the
settling time of the part must elapse before a new valid word is
available from the ADC.
Primary and Auxiliary ADC Inputs
The output of the primary ADC multiplexer feeds into a high
impedance input stage of the buffer amplifier. As a result, the
primary ADC inputs can handle significant source impedances and
are tailored for direct connection to external resistive-type sensors
like strain gauges or Resistance Temperature Detectors (RTDs).
The auxiliary ADC, however, is unbuffered resulting in higher
analog input current on the auxiliary ADC. It should be noted that
this unbuffered input path provides a dynamic load to the driving
source. Therefore, resistor/capacitor combinations on the input
pins can cause dc gain errors depending on the output impedance
of the source that is driving the ADC inputs.
Analog Input Ranges
The absolute input voltage range on the primary ADC is restricted
to between AGND + 100 mV to AVDD – 100 mV. Care must be
taken in setting up the common-mode voltage and input voltage
range so that these limits are not exceeded, otherwise there will
be a degradation in linearity performance.
PRIMARY AND AUXILIARY ADC NOISE
PERFORMANCE
Tables IX, X and XI below show the output rms noise in
μV
and output peak-to-peak resolution in bits (rounded to the
nearest 0.5 LSB) for some typical output update rates on both
the Primary and Auxiliary ADCs. The numbers are typical and
are generated at a differential input voltage of 0 V. The output
update rate is selected via the SF7–SF0 bits in the Sinc Filter
(SF) SFR. It is important to note that the peak-to-peak resolu-
tion figures represent the resolution for which there will be no
code flicker within a six-sigma limit.
REV. A
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